In this letter, a model-free co-design scheme of triggering-driven controller is proposed for probabilistic Boolean control networks (PBCNs) in order to achieve feedback stabilization with minimum controller efforts. Specifically, Q -learning (QL) algorithm is exploited to devise a self-triggered strategy wherein the controller update time is computed in advance by using the current state information. A new self-triggered QL (ST QL) algorithm is presented to achieve the co-design of feedback controller and self-triggered scheme rendering the closed-loop system stable at a given equilibrium point. Finally, some examples are presented to demonstrate the effectiveness of the proposed method.
Model-Free Self-Triggered Control Co-Design for Probabilistic Boolean Control Networks / Acernese, A.; Yerudkar, A.; Glielmo, L.; Del Vecchio, C.. - In: IEEE CONTROL SYSTEMS LETTERS. - ISSN 2475-1456. - 5:5(2021), pp. 1639-1644. [10.1109/LCSYS.2020.3042394]
Model-Free Self-Triggered Control Co-Design for Probabilistic Boolean Control Networks
Glielmo L.;Del Vecchio C.
2021
Abstract
In this letter, a model-free co-design scheme of triggering-driven controller is proposed for probabilistic Boolean control networks (PBCNs) in order to achieve feedback stabilization with minimum controller efforts. Specifically, Q -learning (QL) algorithm is exploited to devise a self-triggered strategy wherein the controller update time is computed in advance by using the current state information. A new self-triggered QL (ST QL) algorithm is presented to achieve the co-design of feedback controller and self-triggered scheme rendering the closed-loop system stable at a given equilibrium point. Finally, some examples are presented to demonstrate the effectiveness of the proposed method.File | Dimensione | Formato | |
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